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Displaying in the dark: light-dependent alternative mating tactics in the Alpine newt

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Abstract

Environment plays a major role for determining the kind of courtship behaviours or alternative mating tactics employed, but the effect of physical variables on fitness has received little attention. The Alpine newt courts during both day and night times and exhibits a complex suite of behaviours involving olfactory, visual and tactile cues. Displaying in both dark and light conditions may increase the number of mating opportunities and alleviate predation risk, but the frequency and efficacy of the various tactics deployed may vary across light conditions, leading males to vary their use of these tactics across different light regimes. To test this hypothesis, we video-recorded sexual encounters at two light intensities in a controlled experimental design. When courting in the dark, males used comparatively more olfactory rather than visual displays. They also relied more on positive feedback from the female before releasing a spermatophore for her to pick up. The particular mix of tactics used under each light condition is likely to be adaptive because in the dark (1) visual communication is hampered, making olfactory displays possibly more effective and (2) males depositing spermatophores are more likely to lose fertilizations to competitors. Mating in light and dark conditions has similar reproductive payoffs, which shows that displaying in the dark is not detrimental and may even be advantageous if predation risk is reduced at night. These results confirm the importance of taking into account physical variables to understand the evolution of sexual communication in animals.

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References

  • Arntzen JW, Sparreboom M (1989) A phylogeny for the old world newts, genus Triturus: biochemical and behavioral data. J Zool, Lond 219:645–664

    Article  Google Scholar 

  • Butlin RK, Ritchie MG (1994) Behaviour and speciation. In: Slater PJB, Halliday TR (eds) Behaviour and evolution. Cambridge University Press, Cambridge, pp 43–79

    Google Scholar 

  • Candolin U (2003) The use of multiple cues in mate choice. Biol Rev 78:575–595

    Article  PubMed  Google Scholar 

  • Cogalniceanu D (1994) The relative importance of vision and olfaction in mate recognition in male newts (Genus Triturus). Herpetologica 50:344–349

    Google Scholar 

  • Denoël M (1996) Etude comparée du comportement de cour de Triturus alpestris alpestris (Laurenti, 1768) et Triturus alpestris cyreni (Wolterstorff, 1932) (Amphibia, Caudata): approche évolutive. Cah Ethol 16:133–258

    Google Scholar 

  • Denoël M (1999) Le comportement social des urodèles. Cah Ethol 19:221–258

    Google Scholar 

  • Denoël M (2002) Paedomorphosis in the Alpine newt (Triturus alpestris): decoupling behavioural and morphological change. Behav Ecol Sociobiol 52:394–399

    Article  Google Scholar 

  • Denoël M (2003) Effect of rival males on the courtship of paedomorphic and metamorphic Triturus alpestris. Copeia 2003:618–623

    Article  Google Scholar 

  • Denoël M (2007) Le Triton alpestre, Triturus alpestris (Laurenti, 1768). In: Jacob JP, Percsy C, De Wavrin H, Graitson E, Kinet T, Denoël M, Paquay M, Percsy N, Remacle A (eds) Amphibiens et reptiles de Wallonie. Aves-Raînne & Région wallonne, Namur, pp 62–71

    Google Scholar 

  • Denoël M, Poncin P, Ruwet JC (2001) Alternative mating tactics in the Alpine newt Triturus alpestris alpestris. J Herpetol 35:62–67

    Article  Google Scholar 

  • Denoël M, Mathieu M, Poncin P (2005) Effect of water temperature on the courtship behavior of the Alpine newt Triturus alpestris. Behav Ecol Sociobiol 58:121–127

    Article  Google Scholar 

  • Dunbar RIM (1982) Intraspecific variations in mating strategy. In: Bateson PPG, Klopfer PH (eds) Perspectives in ethology. Plenum Press, New York, pp 385–431

    Google Scholar 

  • Emlen DJ (2008) The role of genes and the environment in the expression and evolution of alternative tactics. In: Oliveira RF, Taborsky M, Brockmann HJ (eds) Alternative reproductive tactics: An integrative approach. Cambridge University Press, pp 85–108

  • Endler JA (1987) Predation, light intensity and courtship behaviour in Poecilia reticulata (Pisces, Poeciliidae). Anim Behav 35:1376–1385

    Article  Google Scholar 

  • Gabor CR, Halliday TR (1997) Sequential mate choice by multiply mating smooth newts: females become more choosy. Behav Ecol 8:162–166

    Article  Google Scholar 

  • Gross MR (1996) Alternative reproductive strategies and tactics: diversity within sexes. Trends Ecol Evol 11:92–98

    Article  Google Scholar 

  • Grüsser-Cornehls U, Himstedt W (1976) The urodele visual system. In: Fite KV (ed) The amphibian visual system—a multidisciplinary approach. Academic Press, pp 203–267

  • Halliday TR (1976) To breathe or not to breathe; the newt's problem. Anim Behav 24:551–561

    Article  Google Scholar 

  • Himstedt W (1979) The significance of color signals in partner recognition of the newt Triturus alpestris. Copeia 1979:40–43

    Article  Google Scholar 

  • Houck LD, Arnold SJ (2003) Courtship and mating behavior. In: Sever DM (ed) Reproductive biology and phylogeny of urodela. Science Publ., Enfield, New Hampshire, pp 383–424

    Google Scholar 

  • Houde AE (1997) Sex, color, and mate choice in guppies. Princeton University Press, New Jersey

    Google Scholar 

  • Kemp PS, Williams JG (2009) Illumination influences the ability of migrating juvenile salmonids to pass a submerged experimental weir. Ecol Freshwat Fish 18:297–304

    Article  Google Scholar 

  • Kikuyama S, Toyoda F, Ohmiya Y, Matsuda K, Tanaka S, Hayashi H (1995) Sodefrin: a female-attracting peptide pheromone in newt cloacal glands. Science 267:1643–1645

    Article  CAS  PubMed  Google Scholar 

  • Larison B (2009) Impacts of environmental heterogeneity on alternative mating tactics in the threadtail damselfly. Behav Ecol Sociobiol 63:531–536

    Article  Google Scholar 

  • Luiselli L, Capizzi D, Filippi E, Anibaldi C, Rugiero L, Capula M (2007) Comparative diets of three populations of an aquatic snake (Natrix tesselata, Colubridae) from Mediterranean streams with different hydric regimes. Copeia 2007:426–435

    Article  Google Scholar 

  • Łukasic P, Radwan J, Tomkins JL (2006) Structural complexity of the environment affects the survival of alternative male reproductive tactics. Evolution 60:399–403

    Google Scholar 

  • Martin E (1982) Distribution des activités comportementales chez le Triton alpestre Triturus alpestris (Amphibien, Urodèle) en phase aquatique : étude de la variabilité interindividuelle et de l'intensification locale. PhD Thesis. Université Claude Bernard Lyon 1

  • Noldus (2002) The Observer. Reference manual version 4.1. Noldus Information Technology, Wageningen

  • Osikowski A, Rafinski J (2001) Multiple insemination increases reproductive success of female Montandon's newt (Triturus montandoni, Caudata, Salamandridae). Behav Ecol Sociobiol 49:145–149

    Article  Google Scholar 

  • Plath M, Parzefall J, Körner KE, Schlupp I (2004) Sexual selection in darkness? Female mating preferences in surface- and cave-dwelling Atlantic mollies, Poecilia mexicana (Poeciliidae, Teleostei). Behav Ecol Sociobiol 55:596–601

    Article  Google Scholar 

  • Rafinski J, Osikowski A (2002) Sperm mixing in the Alpine newt (Triturus alpestris). Can J Zool 80:1293–1298

    Article  Google Scholar 

  • Reynolds JD, Gross MR, Coombs MJ (1993) Environmental conditions and male morphology determine alternative mating behaviour in Trinidian guppies. Anim Behav 45:145–152

    Article  Google Scholar 

  • Richard PB, Parzefall J, Durand J (1982) Communication chimique chez deux proteidae, Proteus anguinus et Necturus maculosus. Premiers résultats. Bull Soc Zool Fr 107:597–605

    Google Scholar 

  • Schmitz L (1985) Consommation de Tritons alpestres (Triturus alpestris) par le Grèbe castagneux (Tachybaptus ruficollis). Aves 22:213

    Google Scholar 

  • Secondi J (2007) Water turbidity affects the development of sexual morphology in the palmate newt. Ethology 113:711–720

    Article  Google Scholar 

  • Sever DM (2003) Courtship and mating glands. In: Sever DM (ed) Reproductive biology and phylogeny of Urodela. Science Publ., Enfield, New Hampshire, pp 323–381

    Google Scholar 

  • Siegel S, Castellan NJ (1988) Nonparametric statistics for the behavioral sciences. McGraw-Hill, New York

    Google Scholar 

  • Sokal RR, Rohlf FJ (1995) Biometry. Freeman and Co, New York

    Google Scholar 

  • Statsoft-France (2007) Statistica (logiciel d'analyse des données), version 8.0., Maisons-Alfort

  • Thorn R, Raffaëlli J (2001) Les salamandres de l'ancien monde. Boubée, Paris

    Google Scholar 

  • Toyoda F, Yamamoto K, Iwata T, Hasunuma I, Cardinali M, Mosconi G, Polzonetti-Magni AM, Kikuyama S (2004) Peptide pheromones in newts. Peptides 25:1531–1536

    Article  CAS  PubMed  Google Scholar 

  • Verrell PA (1983) The influence of the ambient sex ratio and intermale competition on the sexual behavior of the red-spotted newt, Notophthalmus viridescens (Amphibia: Urodela: Salamandridae). Behav Ecol Sociobiol 13:307–313

    Article  Google Scholar 

  • Verrell PA (1988) Sexual interference in the Alpine newt, Triturus alpestris (Amphibia, Urodela, Salamandridae). Zool Sci 5:159–164

    Google Scholar 

  • von Lindeiner A (1992) Untersuchungen zur Populationsökologie von Berg-, Faden- und Teichmolch (Triturus alpestris L., T. helveticus Razoumowski, T. vulgaris L.) an ausgewählten Gewässern im Naturpark Schönbuch (Tübingen). Jahrb Feldherpetol 3:1–117

    Google Scholar 

  • West-Eberhard MJ (2003) Developmental plasticity and evolution. Oxford University Press

Download references

Acknowledgements

We are very grateful to W.E. Cooper, J.A. Endler, B. Larison, L.R.G. Raw and three reviewers for their constructive comments on the manuscript. The collecting permit was issued by the Ministère de la Région Wallonne. The research project was accepted by the ethical commission of the university. This work was supported by a F.R.S.–FNRS (Fonds de la Recherche Scientifique) grant number 1.5.010.09. M. Denoël is a Research Associate at the F.R.S.–FNRS.

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Communicated by W. Cooper

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Denoël, M., Doellen, J. Displaying in the dark: light-dependent alternative mating tactics in the Alpine newt. Behav Ecol Sociobiol 64, 1171–1177 (2010). https://doi.org/10.1007/s00265-010-0933-0

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  • DOI: https://doi.org/10.1007/s00265-010-0933-0

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